xref: /linux/arch/x86/platform/efi/memmap.c (revision a1ff5a7d78a036d6c2178ee5acd6ba4946243800)
1fdc6d38dSArd Biesheuvel // SPDX-License-Identifier: GPL-2.0
2fdc6d38dSArd Biesheuvel /*
3fdc6d38dSArd Biesheuvel  * Common EFI memory map functions.
4fdc6d38dSArd Biesheuvel  */
5fdc6d38dSArd Biesheuvel 
6fdc6d38dSArd Biesheuvel #define pr_fmt(fmt) "efi: " fmt
7fdc6d38dSArd Biesheuvel 
8fdc6d38dSArd Biesheuvel #include <linux/init.h>
9fdc6d38dSArd Biesheuvel #include <linux/kernel.h>
10fdc6d38dSArd Biesheuvel #include <linux/efi.h>
11fdc6d38dSArd Biesheuvel #include <linux/io.h>
12fdc6d38dSArd Biesheuvel #include <asm/early_ioremap.h>
13fdc6d38dSArd Biesheuvel #include <asm/efi.h>
14fdc6d38dSArd Biesheuvel #include <linux/memblock.h>
15fdc6d38dSArd Biesheuvel #include <linux/slab.h>
16fdc6d38dSArd Biesheuvel 
__efi_memmap_alloc_early(unsigned long size)17fdc6d38dSArd Biesheuvel static phys_addr_t __init __efi_memmap_alloc_early(unsigned long size)
18fdc6d38dSArd Biesheuvel {
19fdc6d38dSArd Biesheuvel 	return memblock_phys_alloc(size, SMP_CACHE_BYTES);
20fdc6d38dSArd Biesheuvel }
21fdc6d38dSArd Biesheuvel 
__efi_memmap_alloc_late(unsigned long size)22fdc6d38dSArd Biesheuvel static phys_addr_t __init __efi_memmap_alloc_late(unsigned long size)
23fdc6d38dSArd Biesheuvel {
24fdc6d38dSArd Biesheuvel 	unsigned int order = get_order(size);
25fdc6d38dSArd Biesheuvel 	struct page *p = alloc_pages(GFP_KERNEL, order);
26fdc6d38dSArd Biesheuvel 
27fdc6d38dSArd Biesheuvel 	if (!p)
28fdc6d38dSArd Biesheuvel 		return 0;
29fdc6d38dSArd Biesheuvel 
30fdc6d38dSArd Biesheuvel 	return PFN_PHYS(page_to_pfn(p));
31fdc6d38dSArd Biesheuvel }
32fdc6d38dSArd Biesheuvel 
33*37aee82cSArd Biesheuvel static
__efi_memmap_free(u64 phys,unsigned long size,unsigned long flags)34fdc6d38dSArd Biesheuvel void __init __efi_memmap_free(u64 phys, unsigned long size, unsigned long flags)
35fdc6d38dSArd Biesheuvel {
36fdc6d38dSArd Biesheuvel 	if (flags & EFI_MEMMAP_MEMBLOCK) {
37fdc6d38dSArd Biesheuvel 		if (slab_is_available())
38fdc6d38dSArd Biesheuvel 			memblock_free_late(phys, size);
39fdc6d38dSArd Biesheuvel 		else
40fdc6d38dSArd Biesheuvel 			memblock_phys_free(phys, size);
41fdc6d38dSArd Biesheuvel 	} else if (flags & EFI_MEMMAP_SLAB) {
42fdc6d38dSArd Biesheuvel 		struct page *p = pfn_to_page(PHYS_PFN(phys));
43fdc6d38dSArd Biesheuvel 		unsigned int order = get_order(size);
44fdc6d38dSArd Biesheuvel 
45fdc6d38dSArd Biesheuvel 		free_pages((unsigned long) page_address(p), order);
46fdc6d38dSArd Biesheuvel 	}
47fdc6d38dSArd Biesheuvel }
48fdc6d38dSArd Biesheuvel 
49fdc6d38dSArd Biesheuvel /**
50fdc6d38dSArd Biesheuvel  * efi_memmap_alloc - Allocate memory for the EFI memory map
51fdc6d38dSArd Biesheuvel  * @num_entries: Number of entries in the allocated map.
52fdc6d38dSArd Biesheuvel  * @data: efi memmap installation parameters
53fdc6d38dSArd Biesheuvel  *
54fdc6d38dSArd Biesheuvel  * Depending on whether mm_init() has already been invoked or not,
55fdc6d38dSArd Biesheuvel  * either memblock or "normal" page allocation is used.
56fdc6d38dSArd Biesheuvel  *
57fdc6d38dSArd Biesheuvel  * Returns zero on success, a negative error code on failure.
58fdc6d38dSArd Biesheuvel  */
efi_memmap_alloc(unsigned int num_entries,struct efi_memory_map_data * data)59fdc6d38dSArd Biesheuvel int __init efi_memmap_alloc(unsigned int num_entries,
60fdc6d38dSArd Biesheuvel 		struct efi_memory_map_data *data)
61fdc6d38dSArd Biesheuvel {
62fdc6d38dSArd Biesheuvel 	/* Expect allocation parameters are zero initialized */
63fdc6d38dSArd Biesheuvel 	WARN_ON(data->phys_map || data->size);
64fdc6d38dSArd Biesheuvel 
65fdc6d38dSArd Biesheuvel 	data->size = num_entries * efi.memmap.desc_size;
66fdc6d38dSArd Biesheuvel 	data->desc_version = efi.memmap.desc_version;
67fdc6d38dSArd Biesheuvel 	data->desc_size = efi.memmap.desc_size;
68fdc6d38dSArd Biesheuvel 	data->flags &= ~(EFI_MEMMAP_SLAB | EFI_MEMMAP_MEMBLOCK);
69fdc6d38dSArd Biesheuvel 	data->flags |= efi.memmap.flags & EFI_MEMMAP_LATE;
70fdc6d38dSArd Biesheuvel 
71fdc6d38dSArd Biesheuvel 	if (slab_is_available()) {
72fdc6d38dSArd Biesheuvel 		data->flags |= EFI_MEMMAP_SLAB;
73fdc6d38dSArd Biesheuvel 		data->phys_map = __efi_memmap_alloc_late(data->size);
74fdc6d38dSArd Biesheuvel 	} else {
75fdc6d38dSArd Biesheuvel 		data->flags |= EFI_MEMMAP_MEMBLOCK;
76fdc6d38dSArd Biesheuvel 		data->phys_map = __efi_memmap_alloc_early(data->size);
77fdc6d38dSArd Biesheuvel 	}
78fdc6d38dSArd Biesheuvel 
79fdc6d38dSArd Biesheuvel 	if (!data->phys_map)
80fdc6d38dSArd Biesheuvel 		return -ENOMEM;
81fdc6d38dSArd Biesheuvel 	return 0;
82fdc6d38dSArd Biesheuvel }
83fdc6d38dSArd Biesheuvel 
84fdc6d38dSArd Biesheuvel /**
85fdc6d38dSArd Biesheuvel  * efi_memmap_install - Install a new EFI memory map in efi.memmap
8692faa821SZhu Wang  * @data: efi memmap installation parameters
87fdc6d38dSArd Biesheuvel  *
88fdc6d38dSArd Biesheuvel  * Unlike efi_memmap_init_*(), this function does not allow the caller
89fdc6d38dSArd Biesheuvel  * to switch from early to late mappings. It simply uses the existing
90fdc6d38dSArd Biesheuvel  * mapping function and installs the new memmap.
91fdc6d38dSArd Biesheuvel  *
92fdc6d38dSArd Biesheuvel  * Returns zero on success, a negative error code on failure.
93fdc6d38dSArd Biesheuvel  */
efi_memmap_install(struct efi_memory_map_data * data)94fdc6d38dSArd Biesheuvel int __init efi_memmap_install(struct efi_memory_map_data *data)
95fdc6d38dSArd Biesheuvel {
9675dde792SArd Biesheuvel 	unsigned long size = efi.memmap.desc_size * efi.memmap.nr_map;
9775dde792SArd Biesheuvel 	unsigned long flags = efi.memmap.flags;
9875dde792SArd Biesheuvel 	u64 phys = efi.memmap.phys_map;
9975dde792SArd Biesheuvel 	int ret;
10075dde792SArd Biesheuvel 
101fdc6d38dSArd Biesheuvel 	efi_memmap_unmap();
102fdc6d38dSArd Biesheuvel 
103d85e3e34SArd Biesheuvel 	if (efi_enabled(EFI_PARAVIRT))
104d85e3e34SArd Biesheuvel 		return 0;
105d85e3e34SArd Biesheuvel 
10675dde792SArd Biesheuvel 	ret = __efi_memmap_init(data);
10775dde792SArd Biesheuvel 	if (ret)
10875dde792SArd Biesheuvel 		return ret;
10975dde792SArd Biesheuvel 
11075dde792SArd Biesheuvel 	__efi_memmap_free(phys, size, flags);
11175dde792SArd Biesheuvel 	return 0;
112fdc6d38dSArd Biesheuvel }
113fdc6d38dSArd Biesheuvel 
114fdc6d38dSArd Biesheuvel /**
115fdc6d38dSArd Biesheuvel  * efi_memmap_split_count - Count number of additional EFI memmap entries
116fdc6d38dSArd Biesheuvel  * @md: EFI memory descriptor to split
117fdc6d38dSArd Biesheuvel  * @range: Address range (start, end) to split around
118fdc6d38dSArd Biesheuvel  *
119fdc6d38dSArd Biesheuvel  * Returns the number of additional EFI memmap entries required to
120fdc6d38dSArd Biesheuvel  * accommodate @range.
121fdc6d38dSArd Biesheuvel  */
efi_memmap_split_count(efi_memory_desc_t * md,struct range * range)122fdc6d38dSArd Biesheuvel int __init efi_memmap_split_count(efi_memory_desc_t *md, struct range *range)
123fdc6d38dSArd Biesheuvel {
124fdc6d38dSArd Biesheuvel 	u64 m_start, m_end;
125fdc6d38dSArd Biesheuvel 	u64 start, end;
126fdc6d38dSArd Biesheuvel 	int count = 0;
127fdc6d38dSArd Biesheuvel 
128fdc6d38dSArd Biesheuvel 	start = md->phys_addr;
129fdc6d38dSArd Biesheuvel 	end = start + (md->num_pages << EFI_PAGE_SHIFT) - 1;
130fdc6d38dSArd Biesheuvel 
131fdc6d38dSArd Biesheuvel 	/* modifying range */
132fdc6d38dSArd Biesheuvel 	m_start = range->start;
133fdc6d38dSArd Biesheuvel 	m_end = range->end;
134fdc6d38dSArd Biesheuvel 
135fdc6d38dSArd Biesheuvel 	if (m_start <= start) {
136fdc6d38dSArd Biesheuvel 		/* split into 2 parts */
137fdc6d38dSArd Biesheuvel 		if (start < m_end && m_end < end)
138fdc6d38dSArd Biesheuvel 			count++;
139fdc6d38dSArd Biesheuvel 	}
140fdc6d38dSArd Biesheuvel 
141fdc6d38dSArd Biesheuvel 	if (start < m_start && m_start < end) {
142fdc6d38dSArd Biesheuvel 		/* split into 3 parts */
143fdc6d38dSArd Biesheuvel 		if (m_end < end)
144fdc6d38dSArd Biesheuvel 			count += 2;
145fdc6d38dSArd Biesheuvel 		/* split into 2 parts */
146fdc6d38dSArd Biesheuvel 		if (end <= m_end)
147fdc6d38dSArd Biesheuvel 			count++;
148fdc6d38dSArd Biesheuvel 	}
149fdc6d38dSArd Biesheuvel 
150fdc6d38dSArd Biesheuvel 	return count;
151fdc6d38dSArd Biesheuvel }
152fdc6d38dSArd Biesheuvel 
153fdc6d38dSArd Biesheuvel /**
154fdc6d38dSArd Biesheuvel  * efi_memmap_insert - Insert a memory region in an EFI memmap
155fdc6d38dSArd Biesheuvel  * @old_memmap: The existing EFI memory map structure
156fdc6d38dSArd Biesheuvel  * @buf: Address of buffer to store new map
157fdc6d38dSArd Biesheuvel  * @mem: Memory map entry to insert
158fdc6d38dSArd Biesheuvel  *
159fdc6d38dSArd Biesheuvel  * It is suggested that you call efi_memmap_split_count() first
160fdc6d38dSArd Biesheuvel  * to see how large @buf needs to be.
161fdc6d38dSArd Biesheuvel  */
efi_memmap_insert(struct efi_memory_map * old_memmap,void * buf,struct efi_mem_range * mem)162fdc6d38dSArd Biesheuvel void __init efi_memmap_insert(struct efi_memory_map *old_memmap, void *buf,
163fdc6d38dSArd Biesheuvel 			      struct efi_mem_range *mem)
164fdc6d38dSArd Biesheuvel {
165fdc6d38dSArd Biesheuvel 	u64 m_start, m_end, m_attr;
166fdc6d38dSArd Biesheuvel 	efi_memory_desc_t *md;
167fdc6d38dSArd Biesheuvel 	u64 start, end;
168fdc6d38dSArd Biesheuvel 	void *old, *new;
169fdc6d38dSArd Biesheuvel 
170fdc6d38dSArd Biesheuvel 	/* modifying range */
171fdc6d38dSArd Biesheuvel 	m_start = mem->range.start;
172fdc6d38dSArd Biesheuvel 	m_end = mem->range.end;
173fdc6d38dSArd Biesheuvel 	m_attr = mem->attribute;
174fdc6d38dSArd Biesheuvel 
175fdc6d38dSArd Biesheuvel 	/*
176fdc6d38dSArd Biesheuvel 	 * The EFI memory map deals with regions in EFI_PAGE_SIZE
177fdc6d38dSArd Biesheuvel 	 * units. Ensure that the region described by 'mem' is aligned
178fdc6d38dSArd Biesheuvel 	 * correctly.
179fdc6d38dSArd Biesheuvel 	 */
180fdc6d38dSArd Biesheuvel 	if (!IS_ALIGNED(m_start, EFI_PAGE_SIZE) ||
181fdc6d38dSArd Biesheuvel 	    !IS_ALIGNED(m_end + 1, EFI_PAGE_SIZE)) {
182fdc6d38dSArd Biesheuvel 		WARN_ON(1);
183fdc6d38dSArd Biesheuvel 		return;
184fdc6d38dSArd Biesheuvel 	}
185fdc6d38dSArd Biesheuvel 
186fdc6d38dSArd Biesheuvel 	for (old = old_memmap->map, new = buf;
187fdc6d38dSArd Biesheuvel 	     old < old_memmap->map_end;
188fdc6d38dSArd Biesheuvel 	     old += old_memmap->desc_size, new += old_memmap->desc_size) {
189fdc6d38dSArd Biesheuvel 
190fdc6d38dSArd Biesheuvel 		/* copy original EFI memory descriptor */
191fdc6d38dSArd Biesheuvel 		memcpy(new, old, old_memmap->desc_size);
192fdc6d38dSArd Biesheuvel 		md = new;
193fdc6d38dSArd Biesheuvel 		start = md->phys_addr;
194fdc6d38dSArd Biesheuvel 		end = md->phys_addr + (md->num_pages << EFI_PAGE_SHIFT) - 1;
195fdc6d38dSArd Biesheuvel 
196fdc6d38dSArd Biesheuvel 		if (m_start <= start && end <= m_end)
197fdc6d38dSArd Biesheuvel 			md->attribute |= m_attr;
198fdc6d38dSArd Biesheuvel 
199fdc6d38dSArd Biesheuvel 		if (m_start <= start &&
200fdc6d38dSArd Biesheuvel 		    (start < m_end && m_end < end)) {
201fdc6d38dSArd Biesheuvel 			/* first part */
202fdc6d38dSArd Biesheuvel 			md->attribute |= m_attr;
203fdc6d38dSArd Biesheuvel 			md->num_pages = (m_end - md->phys_addr + 1) >>
204fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
205fdc6d38dSArd Biesheuvel 			/* latter part */
206fdc6d38dSArd Biesheuvel 			new += old_memmap->desc_size;
207fdc6d38dSArd Biesheuvel 			memcpy(new, old, old_memmap->desc_size);
208fdc6d38dSArd Biesheuvel 			md = new;
209fdc6d38dSArd Biesheuvel 			md->phys_addr = m_end + 1;
210fdc6d38dSArd Biesheuvel 			md->num_pages = (end - md->phys_addr + 1) >>
211fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
212fdc6d38dSArd Biesheuvel 		}
213fdc6d38dSArd Biesheuvel 
214fdc6d38dSArd Biesheuvel 		if ((start < m_start && m_start < end) && m_end < end) {
215fdc6d38dSArd Biesheuvel 			/* first part */
216fdc6d38dSArd Biesheuvel 			md->num_pages = (m_start - md->phys_addr) >>
217fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
218fdc6d38dSArd Biesheuvel 			/* middle part */
219fdc6d38dSArd Biesheuvel 			new += old_memmap->desc_size;
220fdc6d38dSArd Biesheuvel 			memcpy(new, old, old_memmap->desc_size);
221fdc6d38dSArd Biesheuvel 			md = new;
222fdc6d38dSArd Biesheuvel 			md->attribute |= m_attr;
223fdc6d38dSArd Biesheuvel 			md->phys_addr = m_start;
224fdc6d38dSArd Biesheuvel 			md->num_pages = (m_end - m_start + 1) >>
225fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
226fdc6d38dSArd Biesheuvel 			/* last part */
227fdc6d38dSArd Biesheuvel 			new += old_memmap->desc_size;
228fdc6d38dSArd Biesheuvel 			memcpy(new, old, old_memmap->desc_size);
229fdc6d38dSArd Biesheuvel 			md = new;
230fdc6d38dSArd Biesheuvel 			md->phys_addr = m_end + 1;
231fdc6d38dSArd Biesheuvel 			md->num_pages = (end - m_end) >>
232fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
233fdc6d38dSArd Biesheuvel 		}
234fdc6d38dSArd Biesheuvel 
235fdc6d38dSArd Biesheuvel 		if ((start < m_start && m_start < end) &&
236fdc6d38dSArd Biesheuvel 		    (end <= m_end)) {
237fdc6d38dSArd Biesheuvel 			/* first part */
238fdc6d38dSArd Biesheuvel 			md->num_pages = (m_start - md->phys_addr) >>
239fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
240fdc6d38dSArd Biesheuvel 			/* latter part */
241fdc6d38dSArd Biesheuvel 			new += old_memmap->desc_size;
242fdc6d38dSArd Biesheuvel 			memcpy(new, old, old_memmap->desc_size);
243fdc6d38dSArd Biesheuvel 			md = new;
244fdc6d38dSArd Biesheuvel 			md->phys_addr = m_start;
245fdc6d38dSArd Biesheuvel 			md->num_pages = (end - md->phys_addr + 1) >>
246fdc6d38dSArd Biesheuvel 				EFI_PAGE_SHIFT;
247fdc6d38dSArd Biesheuvel 			md->attribute |= m_attr;
248fdc6d38dSArd Biesheuvel 		}
249fdc6d38dSArd Biesheuvel 	}
250fdc6d38dSArd Biesheuvel }
251